Difference between revisions of "Civil-UAV"
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|Title=Using embedded systems to safely monitor the environment | |Title=Using embedded systems to safely monitor the environment | ||
|Project leader=Erol Cagatay | |Project leader=Erol Cagatay | ||
− | |User=Tor Olav Steine, Josef Noll, Cecilia Coveri, Andrea Fiaschetti, Massimo Traversone, Marina Guzzeti, Knut E. Gustavsen, Christian Gehrmann, | + | |User=Tor Olav Steine, Josef Noll, Cecilia Coveri, Andrea Fiaschetti, Massimo Traversone, Marina Guzzeti, Knut E. Gustavsen, Christian Gehrmann, Paolo.Azzoni, |
|StartDate=2014/12/01 | |StartDate=2014/12/01 | ||
|Due_date=2015/09/30 | |Due_date=2015/09/30 | ||
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* wind tunnel measurments - Lenka Lhotská & colleagues, Czech Technical Unversity (CZ) | * wind tunnel measurments - Lenka Lhotská & colleagues, Czech Technical Unversity (CZ) | ||
* security domain/surveillance - Elena Tsiporkova, SIRRIS (BE) and Stefan van Baelen, iMinds (BE) | * security domain/surveillance - Elena Tsiporkova, SIRRIS (BE) and Stefan van Baelen, iMinds (BE) | ||
− | * | + | * Northern Sea monitoring - FFI (NO), oil & gas (?) |
+ | * Aircraft dynamics - NTNU - AMOS (NO) | ||
Missing expertise | Missing expertise | ||
* UAV constructor | * UAV constructor | ||
− | * Mission simulations | + | * Mission simulations |
− | + | ||
− | + | ||
= Background = | = Background = | ||
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| intro='''{{PAGENAME}} related Meeting(s):''' | | intro='''{{PAGENAME}} related Meeting(s):''' | ||
}} | }} | ||
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+ | * [[Media:20150105Erol-Josef-UAV-discussion.pptx]] |
Latest revision as of 08:52, 24 April 2015
Wiki for ITS | ||||||
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Project: Civil-UAV |
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Using embedded systems to safely monitor the environment |
Web: | http://cwi.unik.no/wiki/Civil-UAV |
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Project leader | Erol Cagatay |
Project Participants | |
Start Date | 2014/12/01 |
End Date | 2015/09/30 |
Supported by | own |
Objective | Establish a project for the JU ECSEL, submission deadline in September, pre-proposal submission ??
The main objectives of the proposal are
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Research Domain | |
Keywords | UAV, UAS |
Factpage of Project Civil-UAV
Equipment used in project: Civil-UAV/Equipment
Upcoming events to promote the proposal
- 21.-22. Jan2015 - Artemisia Brokerage Event in Amsterdam - Erol will present
- 4.-5.Feb2015 - Unmanned Expo, The Hague - Josef and Tor Olav have a talk each
Topics to discuss
- use cases for European partners (security?)
- challenges for BLOS, BRLOS operation
- title: "monitor the environment" -> more proactive towards other developments, e.g. security and surveillance
Confirmed partners
- Movation (NO), Erol Cagatay - project leader
- Selex ES (IT), Massimo Traversone, Marina Guzzetti, Cecilia Coveri - Communication, Certification, ...
- Mondragon Univ. (ES) - Roberto Uribeetxeberria, - System aspects and simulation
- eSmartSystems (NO) - Knut E. Gustavsen - use case leader Smart Grid
- Uni Roma La Sapienza - Andrea Fiaschetti - security and dependability monitoring
- Alfatroll (NO) - Tor Olav Steine - IQ_Engine - long-endurance prototype
- SICS (SE) - Christian Gehrmann - Security certification
Other aspects presented by partners:
- operation in bad weather conditions - simulation of visibility - Christoph Schmittner, AIT (AU)
- simulation and training - Philippe Ravier, SILKAN (FR)
- error calculations - Peter Gorm Larsen, Aarhus University (DK)
- 5 GHz communication links - Georges Mykoniatis, ENAC (FR)
- wind tunnel measurments - Lenka Lhotská & colleagues, Czech Technical Unversity (CZ)
- security domain/surveillance - Elena Tsiporkova, SIRRIS (BE) and Stefan van Baelen, iMinds (BE)
- Northern Sea monitoring - FFI (NO), oil & gas (?)
- Aircraft dynamics - NTNU - AMOS (NO)
Missing expertise
- UAV constructor
- Mission simulations
Background
Application-driven requirements are challenging regulations for Civil-UAV operations. This project will join the relevant key technologies to enable certification of a Civil-UAV. Research challenges are driven by application examples, e.g. power line monitoring and environmental monitoring of the Northern Sea. Identified challenges are long endurance, harsh environments (storm conditions, below zero temperatures), autonomous operations, detect and avoid, communications.
Expected Outcome
The expected outcome is the certification process for a Civil-UAV, addressing the whole value chain, from embedded system design for controlling, avoidance, communication to certification, prototyping and testing.
Other aspects (draft)
- Core concepts addressed in ARTEMIS nSHIELD
- Novel core IQ_Engine and communication piloted
- Automatic mission simulated
- beyond visual line-of-sight operation (BVLOS)
- beyond radio line-of-sight operation (BRLOS)
Presentations
- presented by Josef at the Artemis Pre-Brokerage event, Dec2014 in Vienna: https://owncloud.unik.no/public.php?service=files&t=2eeb9fb638382ca796011d79691eb584
Open Action Items
Meetings
Civil-UAV related Meeting(s):- Civil-UAV oppdattering (onThis property is a special property in this wiki. 24 April 2015)